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Two-stage capacity design problem in a single-collector-single-remanufacturer system

Authors
Son, YooleeKim, Tae bok
Issue Date
May-2015
Publisher
Inderscience
Keywords
Capacity planning; Newsvendor model; Reverse supply chain; Rsc; Single-collector-singleremanufacturer system; Stochastic return rate; Two-stage capacity design problem
Citation
International Journal of Procurement Management, v.8, no.3, pp.272 - 302
Indexed
SCOPUS
Journal Title
International Journal of Procurement Management
Volume
8
Number
3
Start Page
272
End Page
302
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/157204
DOI
10.1504/IJPM.2015.069154
ISSN
1753-8432
Abstract
In this paper, we study a capacity planning problem in a two-stage reverse supply chain, which consists of one collector and one remanufacturer when the used products are stochastically returned. We consider collector's two alternative modes to cope with a stochastic return rate of used products. For each mode, we develop the analytical solution procedure to determine the optimal level of collection and remanufacturing capacity according to the bargaining power of these two actors based on newsvendor model. And then, we conduct a numerical study to examine how these two modes behave and compare the relative effectiveness. Based on numerical analyses, it was observed that the variance of return rate of used product is a very important factor in managing the capacity policy. Additionally, according to collector's capacity mode, the issue who leads a decision-making has also significant effect on deciding two actors' individual profit and system profit.
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